iotests: Test post-backing convert target behavior
This adds a test case to 122 for what happens when you convert to a target with a backing file that is shorter than the target, and the image format does not support efficient zero writes (as is the case with qcow2 v2). Signed-off-by: Max Reitz <mreitz@redhat.com> Message-id: 20180501165750.19242-3-mreitz@redhat.com Reviewed-by: Eric Blake <eblake@redhat.com> Signed-off-by: Max Reitz <mreitz@redhat.com>
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@ -76,6 +76,48 @@ $QEMU_IMG convert -O $IMGFMT -c -B "$TEST_IMG".base "$TEST_IMG" "$TEST_IMG".orig
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$QEMU_IO -c "read -P 0 0 3M" "$TEST_IMG".orig 2>&1 | _filter_qemu_io | _filter_testdir
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echo
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echo "=== Converting to an overlay larger than its backing file ==="
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echo
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TEST_IMG="$TEST_IMG".base _make_test_img 256M
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# Needs to be at least how much an L2 table covers
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# (64 kB/entry * 64 kB / 8 B/entry = 512 MB)
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# That way, qcow2 will yield at least two status request responses.
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# With just a single response, it would always say "Allocated in the
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# backing file", so the optimization qemu-img convert tries to do is
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# done automatically. Once it has to be queried twice, however (and
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# one of the queries is completely after the end of the backing file),
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# the block layer will automatically add a ZERO flag that qemu-img
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# convert used to follow up with a zero write to the target.
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# We do not want such a zero write, however, because we are past the
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# end of the backing file on the target as well, so we do not need to
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# write anything there.
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_make_test_img -b "$TEST_IMG".base 768M
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# Use compat=0.10 as the output so there is no zero cluster support
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$QEMU_IMG convert -O $IMGFMT -B "$TEST_IMG".base -o compat=0.10 \
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"$TEST_IMG" "$TEST_IMG".orig
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# See that nothing has been allocated past 64M
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$QEMU_IMG map "$TEST_IMG".orig | _filter_qemu_img_map
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echo
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# Just before the end of the backing file
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$QEMU_IO -c 'write -P 0x11 255M 1M' "$TEST_IMG".base 2>&1 | _filter_qemu_io
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# Somewhere in the second L2 table
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$QEMU_IO -c 'write -P 0x22 600M 1M' "$TEST_IMG" 2>&1 | _filter_qemu_io
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$QEMU_IMG convert -O $IMGFMT -B "$TEST_IMG".base -o compat=0.10 \
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"$TEST_IMG" "$TEST_IMG".orig
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$QEMU_IMG map "$TEST_IMG".orig | _filter_qemu_img_map
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$QEMU_IO -c 'read -P 0x11 255M 1M' \
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-c 'read -P 0x22 600M 1M' \
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"$TEST_IMG".orig \
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| _filter_qemu_io
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echo
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echo "=== Concatenate multiple source images ==="
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echo
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@ -28,6 +28,24 @@ read 3145728/3145728 bytes at offset 0
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read 3145728/3145728 bytes at offset 0
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3 MiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
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=== Converting to an overlay larger than its backing file ===
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Formatting 'TEST_DIR/t.IMGFMT.base', fmt=IMGFMT size=268435456
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Formatting 'TEST_DIR/t.IMGFMT', fmt=IMGFMT size=805306368 backing_file=TEST_DIR/t.IMGFMT.base
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Offset Length File
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wrote 1048576/1048576 bytes at offset 267386880
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1 MiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
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wrote 1048576/1048576 bytes at offset 629145600
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1 MiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
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Offset Length File
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0xff00000 0x100000 TEST_DIR/t.IMGFMT.base
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0x25800000 0x100000 TEST_DIR/t.IMGFMT.orig
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read 1048576/1048576 bytes at offset 267386880
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1 MiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
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read 1048576/1048576 bytes at offset 629145600
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1 MiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
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=== Concatenate multiple source images ===
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Formatting 'TEST_DIR/t.IMGFMT.1', fmt=IMGFMT size=4194304
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